Ferromagnetism in Amorphous MgO

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Abstract

We report, for the first time, the atomic structure of amorphous MgO based on ab initio molecular dynamics simulations. We find that its main building blocks are four-fold and five-fold coordinated configurations, similar to those formed in the liquid state. Its average coordination is estimated to beabout 4.36. The amorphous form having a perfect stoichiometry has a band gap energy of 2.4eV. On the other hand, Mg vacancies induce an insulator to metal transition and ferromagnetism in amorphous MgO whilst O vacancies do not cause such a transition, implying that the magnetism in amorphous MgO is related to the non-stoichiometry and Mg vacancies. With the application of pressure, the stoichiometric and non-stoichiometric (Mg vacancies) models undergo a phase transformation into a rocksalt state, suggesting that the electronic structure of the initial configurations has no influence on the resulting high-pressure phase in amorphous MgO.

Description

Durandurdu, Murat/0000-0001-5636-3183;

Keywords

Ferromagnetism, Amorphous, MgO, Phase Transformation

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

WoS Q

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OpenCitations Citation Count
3

Volume

97

Issue

24

Start Page

2129

End Page

2141